Murata S, Kawahara H, Tohma S, Yamamoto K, Kasahara M, Nabeshima Y, Tanaka K, Chiba T
Department of Allergy, Graduate School of Medicine, Japan.
J Biol Chem. 1999 Dec 31;274(53):38211-5. doi: 10.1074/jbc.274.53.38211.
The proteasome activator PA28 binds to both ends of the central catalytic machine, known as the 20 S proteasome, in opposite orientations to form the enzymatically active proteasome. The PA28 family is composed of three members designated alpha, beta, and gamma; PA28alpha and PA28beta form the heteropolymer mainly located in the cytoplasm, whereas PA28gamma forms a homopolymer that predominantly occurs in the nucleus. Available evidence indicates that the heteropolymer of PA28alpha and PA28beta is involved in the processing of intracellular antigens, but the function of PA28gamma remains elusive. To investigate the role of PA28gamma in vivo, we generated mice deficient in the PA28gamma gene. The PA28gamma-deficient mice were born without appreciable abnormalities in all tissues examined, but their growth after birth was retarded compared with that of PA28gamma(+/-) or PA28gamma(+/+) mice. We also investigated the effects of the PA28gamma deficiency using cultured embryonic fibroblasts; cells lacking PA28gamma were larger and displayed a lower saturation density than their wild-type counterparts. Neither the expression of PA28alpha/beta nor the subcellular localization of PA28alpha was affected in PA28gamma(-/-) cells. These results indicate that PA28gamma functions as a regulator of cell proliferation and body growth in mice and suggest that neither PA28alpha nor PA28beta compensates for the PA28gamma deficiency.
蛋白酶体激活剂PA28以相反的方向与称为20S蛋白酶体的中央催化核心的两端结合,形成具有酶活性的蛋白酶体。PA28家族由三个成员组成,分别命名为α、β和γ;PA28α和PA28β形成主要位于细胞质中的异聚体,而PA28γ形成主要存在于细胞核中的同聚体。现有证据表明,PA28α和PA28β的异聚体参与细胞内抗原的加工,但PA28γ的功能仍不清楚。为了研究PA28γ在体内的作用,我们培育了PA28γ基因缺失的小鼠。PA28γ基因缺失的小鼠出生时在所检查的所有组织中均无明显异常,但出生后的生长比PA28γ(+/-)或PA28γ(+/+)小鼠迟缓。我们还使用培养的胚胎成纤维细胞研究了PA28γ缺失的影响;缺乏PA28γ的细胞比野生型细胞更大,饱和密度更低。在PA28γ(-/-)细胞中,PA28α/β的表达和PA28α的亚细胞定位均未受影响。这些结果表明,PA28γ在小鼠中作为细胞增殖和身体生长的调节因子发挥作用,并提示PA28α和PA28β均不能补偿PA28γ的缺失。